Modifying the substrate specificity of staphylococcal lipases

被引:18
作者
van Kampen, M [1 ]
Verheij, HM [1 ]
Egmond, MR [1 ]
机构
[1] Univ Utrecht, Biomembrane Inst, Ctr Biomembranes & Lipid Enzymol, Dept Enzymol & Prot Engn, NL-3508 TC Utrecht, Netherlands
关键词
D O I
10.1021/bi990096d
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The lipase from Staphylococcus hyicus (SHL) displays a high phospholipase activity whereas the homologous S. aureus lipase (SAL) is not active or hardly active on:phospholipid substrates. Previously, it has been shown that elements within the region comprising residues 254-358 are essential for the recognition of phospholipids by SHL. To specifically identify the important residues, nine small clusters of SHL were individually replaced by the corresponding SAL sequence within region 254-358. For cloning convenience, a synthetic gene fragment of SHL was assembled, thereby introducing restriction sites into the SHL gene and optimizing the codon usage. All nine chimeras were well-expressed as active enzymes. Eight chimeras showed lipase and phospholipase activities within a factor of 2 comparable to WT-SHL in standard activity assays. Exchange of the polar SHL region 293-300 by the more hydrophobic SAL region resulted in a 32-fold increased k(cat)/K(m)* value for Lipase activity and a concomitant 68-fold decrease in k(cat)/K(m)* for phospholipase activity. Both changes are, due to effects on catalytic turnover as well as on substrate affinity. Subsequently, six point mutants were generated; G293N, E295F, T297P, K298F, I299V, and L300I. Residue E295 appeared to play a minor role whereas K298 was the major determinant for phospholipase activity. The mutation K298F caused a 60-fold decrease in k(cat)/K(m)* on the phospholipid substrate due to changes in both k(cat) and K(m)*. Substitution of F298 by a lysine in SAL resulted in a 4-fold increase in phospholipase activity. Two additional hydrophobic to polar substitutions further increased the phospholipase activity 23-fold compared to WT-SAL.
引用
收藏
页码:9524 / 9532
页数:9
相关论文
共 33 条
[1]   STUDIES ON LYSOPHOSPHOLIPASES .7. SYNTHESIS OF ACYLTHIOESTER ANALOGS OF LYSOLECITHIN AND THEIR USE IN A CONTINUOUS SPECTROPHOTOMETRIC ASSAY FOR LYSOPHOSPHOLIPASES, A METHOD WITH POTENTIAL APPLICABILITY TO OTHER LIPOLYTIC ENZYMES [J].
AARSMAN, AJ ;
VANDEENEN, LLM ;
VANDENBOSCH, H .
BIOORGANIC CHEMISTRY, 1976, 5 (03) :241-253
[2]  
BEIBOER SHW, 1995, EUR J BIOCHEM, V231, P747, DOI 10.1111/j.1432-1033.1995.0747d.x
[3]   Design, total synthesis, and functional overexpression of the Candida rugosa lip1 gene coding for a major industrial lipase [J].
Brocca, S ;
Schmidt-Dannert, C ;
Lotti, M ;
Alberghina, L ;
Schmid, RD .
PROTEIN SCIENCE, 1998, 7 (06) :1415-1422
[4]   Pancreatic lipase structure-function relationships by domain exchange [J].
Carriere, F ;
Thirstrup, K ;
Hjorth, S ;
Ferrato, F ;
Nielsen, PF ;
WithersMartinez, C ;
Cambillau, C ;
Boel, E ;
Thim, L ;
Verger, R .
BIOCHEMISTRY, 1997, 36 (01) :239-248
[5]  
CYGLER M, 1993, PROTEIN SCI, V2, P366
[6]  
DEREWENDA ZS, 1994, ADV PROTEIN CHEM, V45, P1
[7]   MOLECULAR ANALYSIS AND EXPRESSION OF THE LIPASE OF STAPHYLOCOCCUS-EPIDERMIDIS [J].
FARRELL, AM ;
FOSTER, TJ ;
HOLLAND, KT .
JOURNAL OF GENERAL MICROBIOLOGY, 1993, 139 :267-277
[8]   PURIFICATION AND CHARACTERIZATION OF A MUTANT HUMAN PLATELET PHOSPHOLIPASE-A2 EXPRESSED IN ESCHERICHIA-COLI - CLEAVAGE OF A FUSION PROTEIN WITH CYANOGEN-BROMIDE [J].
FRANKEN, PA ;
VANDENBERG, L ;
HUANG, J ;
GUNYUZLU, P ;
LUGTIGHEID, RB ;
VERHEIJ, HM ;
DEHAAS, GH .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1992, 203 (1-2) :89-98
[9]   COMPLETE NUCLEOTIDE-SEQUENCE OF THE LIPASE GENE FROM STAPHYLOCOCCUS-HYICUS CLONED IN STAPHYLOCOCCUS-CARNOSUS [J].
GOTZ, F ;
POPP, F ;
KORN, E ;
SCHLEIFER, KH .
NUCLEIC ACIDS RESEARCH, 1985, 13 (16) :5895-5906
[10]   PREFERENTIAL CODON USAGE IN PROKARYOTIC GENES - THE OPTIMAL CODON ANTICODON INTERACTION ENERGY AND THE SELECTIVE CODON USAGE IN EFFICIENTLY EXPRESSED GENES [J].
GROSJEAN, H ;
FIERS, W .
GENE, 1982, 18 (03) :199-209